期刊文献+

Design and analysis of a network coding algorithm for ad hoc networks

Design and analysis of a network coding algorithm for ad hoc networks
下载PDF
导出
摘要 Network coding is proved to have advantages in both wireline and wireless networks. Especially, appropriate network coding schemes are programmed for underlined networks. Considering the feature of strong node mobility in aviation communication networks, a hop-by-hop network coding algorithm based on ad hoc networks was proposed. Compared with COPE-like network coding algorithms, the proposed algorithm does not require overhearing from other nodes, which meets confidentiality requirements of aviation communication networks. Meanwhile, it does save resource consumption and promise less processing delay. To analyze the performance of the network coding algorithm in scalable networks with different traffic models, a typical network was built in a network simulator, through which receiving accuracy rate and receiving delay were both examined.The simulation results indicate that, by virtue of network coding, the proposed algorithm works well and improves performance significantly. More specifically, it has better performance in enhancing receiving accuracy rate and reducing receiving delay, as compared with any of the traditional networks without coding. It was applied to both symmetric and asymmetric traffic flows and, in particular, it achieves much better performance when the network scale becomes larger. Therefore, this algorithm has great potentials in large-scale multi-hop aviation communication networks. Network coding is proved to have advantages in both wireline and wireless networks. Especially, appropriate network coding schemes are programmed for underlined networks. Considering the feature of strong node mobility in aviation communication networks, a hop-by-hop network coding algorithm based on ad hoc networks was proposed. Compared with COPE-like network coding algorithms, the proposed algorithm does not require overhearing from other nodes, which meets confidentiality requirements of aviation communication networks. Meanwhile, it does save resource consumption and promise less processing delay. To analyze the performance of the network coding algorithm in scalable networks with different traffic models, a typical network was built in a network simulator, through which receiving accuracy rate and receiving delay were both examined.The simulation results indicate that, by virtue of network coding, the proposed algorithm works well and improves performance significantly. More specifically, it has better performance in enhancing receiving accuracy rate and reducing receiving delay, as compared with any of the traditional networks without coding. It was applied to both symmetric and asymmetric traffic flows and, in particular, it achieves much better performance when the network scale becomes larger. Therefore, this algorithm has great potentials in large-scale multi-hop aviation communication networks.
出处 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第4期1358-1365,共8页 中南大学学报(英文版)
基金 Project(61175110)supported by the National Natural Science Foundation of China Project(2012CB316305)supported by National Basic Research Program of China Project(2011ZX02101-004)supported by National S&T Major Projects of China
关键词 ad hoc network network coding algorithm aviation communication network 无线网络 编码算法 ad 设计 通信网络 网络编码 网络模拟器 编码方案
  • 相关文献

参考文献14

  • 1AHLSWEDE R, CAI N, LI S. Network information flow [J]. IEEE T Inform Theory, 2000,46(4): 1204-1216.
  • 2SHIRISH S K, WANG Z, HAMID R S, GARC1A-LUNA-ACEVES J J. Multicast throughput order of network coding in wireless ad-hoc networks [J]. IEEE T Commun, 2011, 59(2): 497-506.
  • 3HUNDEBOLL M, REIN S A, FITZEK F H P. Impact of network coding on delay and throughput in practical wireless chain topologies [C]// IEEE Consumer Communications and Networking Conference Las Vegas, NV, USA: IEEE, 2013: 381-386.
  • 4MOHAMMADHOSSEIN A, MUSTAFA M, JEREMIAH F H. Delay optimization of wireless networks with network coding [C]// 24th Canadian Conference on Electrical and Computer Engineering, 2011: 1282-1287.
  • 5WU Y, CHOU P A, KUNG S Y. Minimum-energy multicast in mobile ad hoc networks using network coding [J]. IEEE T Commun,2005,53(11): 1906-1918.
  • 6JANUS H, FRANK H P F, VIDEBAEK P M, MARCOS K. Green mobile clouds: Network coding and user cooperation for improved energy efficiency [C]// IEEE 1st International Conference on Cloud Networking (CLOUDNET), Paris, France: IEEE, 2012: 111-118.
  • 7ZHOU M, CUI Q M, JANTTI R, TAO X F. Energy-efficient relay selection and power allocation for two-way relay channel with analog network coding [J], IEEE Commun Lett, 2012, 16(6): 816-819.
  • 8XIA Y, ZHANG T Y, HUANG J Q. New algorithm for variable-rate linear broadcast network coding [J], Journal of Control South University of Technology, 2011, 18(5): 1193-1199.
  • 9GKANTSIDIS C, RODRIGUEZ P. Cooperative security for network coding file distribution [C]// Proc IEEE INFOCOM, Barcelona: IEEE, 2006: 1-13.
  • 10YU Z, WEI Y, RAMKUMAR B. An efficient signature-based schemefor securing network coding against pollution attacks [C]// Proc IEEE INFOCOM, Phoenix, AZ, USA: IEEE, 2008: 406-414.

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部